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A review of biohydrogen production technology for application towards hydrogen fuel cells

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  • Ferraren-De Cagalitan, D.D.T.
  • Abundo, M.L.S.

Abstract

The rapidly depleting fossil fuels, as well as the devastating effects of climate change, have propelled the search for a cleaner and sustainable source of energy. Hydrogen fuel cells generate electricity without the need for combustion, producing only water and heat in the process. To be considered sustainable and a carbon-neutral source of energy, the following conditions must be met: 1) the fuel cells must be fed with hydrogen-rich fuel from renewables; 2) hydrogen production rates must be financially viable; and 3) hydrogen generation costs must be competitive with other sources of hydrogen. This paper provides an overview of the various methods of hydrogen production via biochemical reactions (biohydrogen). It also discusses the challenges encountered in biohydrogen production and offers some solutions to overcome such. The paper ends with a discussion of the potential market for biohydrogen in fuel cells. Finally, this article highlights the potential of biohydrogen as an alternative source for clean hydrogen, while emphasizing the areas that require more intensive research to make the hydrogen economy a viable reality.

Suggested Citation

  • Ferraren-De Cagalitan, D.D.T. & Abundo, M.L.S., 2021. "A review of biohydrogen production technology for application towards hydrogen fuel cells," Renewable and Sustainable Energy Reviews, Elsevier, vol. 151(C).
  • Handle: RePEc:eee:rensus:v:151:y:2021:i:c:s1364032121006973
    DOI: 10.1016/j.rser.2021.111413
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    References listed on IDEAS

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    1. Łukajtis, Rafał & Hołowacz, Iwona & Kucharska, Karolina & Glinka, Marta & Rybarczyk, Piotr & Przyjazny, Andrzej & Kamiński, Marian, 2018. "Hydrogen production from biomass using dark fermentation," Renewable and Sustainable Energy Reviews, Elsevier, vol. 91(C), pages 665-694.
    2. Azwar, M.Y. & Hussain, M.A. & Abdul-Wahab, A.K., 2014. "Development of biohydrogen production by photobiological, fermentation and electrochemical processes: A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 31(C), pages 158-173.
    3. Jafary, Tahereh & Daud, Wan Ramli Wan & Ghasemi, Mostafa & Kim, Byung Hong & Md Jahim, Jamaliah & Ismail, Manal & Lim, Swee Su, 2015. "Biocathode in microbial electrolysis cell; present status and future prospects," Renewable and Sustainable Energy Reviews, Elsevier, vol. 47(C), pages 23-33.
    4. Machado, R.G. & Moreira, F.S. & Batista, F.R.X. & Ferreira, J.S. & Cardoso, V.L., 2018. "Repeated batch cycles as an alternative for hydrogen production by co-culture photofermentation," Energy, Elsevier, vol. 153(C), pages 861-869.
    5. Wu, Ta Yeong & Hay, Jacqueline Xiao Wen & Kong, Liu Bi & Juan, Joon Ching & Jahim, Jamaliah Md., 2012. "Recent advances in reuse of waste material as substrate to produce biohydrogen by purple non-sulfur (PNS) bacteria," Renewable and Sustainable Energy Reviews, Elsevier, vol. 16(5), pages 3117-3122.
    6. Morsy, Fatthy Mohamed, 2015. "CO2-free biohydrogen production by mixed dark and photofermentation bacteria from sorghum starch using a modified simple purification and collection system," Energy, Elsevier, vol. 87(C), pages 594-604.
    7. Ghimire, Anish & Frunzo, Luigi & Pirozzi, Francesco & Trably, Eric & Escudie, Renaud & Lens, Piet N.L. & Esposito, Giovanni, 2015. "A review on dark fermentative biohydrogen production from organic biomass: Process parameters and use of by-products," Applied Energy, Elsevier, vol. 144(C), pages 73-95.
    8. Nikolaidis, Pavlos & Poullikkas, Andreas, 2017. "A comparative overview of hydrogen production processes," Renewable and Sustainable Energy Reviews, Elsevier, vol. 67(C), pages 597-611.
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